基于时频分析的民用机场环境干扰特性

C. Sun, Shau-Shiun Jan
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引用次数: 7

摘要

随着增强系统或区域卫星系统的发展,民用GNSS的性能得到了极大的提高,特别是在系统特性误差预算方面。然而,地面用户环境中不可预测的因素,如有意或无意的干扰,严重降低了GNSS接收机的性能。在生命安全应用中,特别是航空应用中,对GNSS的干扰效应进行监测和研究是一个重要的问题。本研究在某民用机场部署了一套低成本的GPS干扰监测系统进行长期干扰监测,在此期间已观测到多次干扰事件。本文重点对观测到的干扰进行重组,识别干扰特征及其对导航业务的影响。基于傅立叶正弦频谱的时频法对记录的中频信号进行分析,推测出干扰的周期、持续时间、发生频率等统计量。此外,根据定位结果的准则和估计的GNSS信号跟踪过程中的载波噪声比(C/N0)来评估干扰的影响。总之,本文提供了在机场环境中找到这些干扰事件的有用信息的可能性,用于定位干扰机或减轻干扰信号的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interference characteristics for the civil airport environment using time-frequency analysis
Nowadays with the developing augmentation system or regional satellite systems, the performance of GNSS for civil users is extremely improved especially on the error budget from system characteristics. However, unpredictable factors on the ground user environment, such as intentional or unintentional interferences, strongly degrade the performance of GNSS receiver. It is a significant issue to monitor and investigate the interference effect while applying GNSS for safety of life applications, aviation applications especially. In this study, a low-cost GPS interference monitoring system was deployed at a civil airport for the long-term interference monitoring, and so far several interference events were observed during this period. This paper focused on the reorganization of what the interference observed is, and identifications of the interference characteristics and the influence on navigation service. The Fourier-sine-spectrum-based time-frequency method analyzed the recorded intermediate frequency signal to speculate the interference statistics such as the period, the duration, the frequency of occurrence, and so on. In addition, the interference influence was evaluated on the criterion of the positioning results and the estimated Carrier-to-Noise ratio (C/N0) in GNSS signal tracking process. In summary, this paper offers the possibility to find useful information of these interference events for the airport environment in locating jammers or mitigating the effects of interference signals.
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